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Peptide conformational heterogeneity revealed from nonlinear vibrational spectroscopy and molecular-dynamics simulations

机译:从非线性振动光谱和分子动力学模拟揭示肽构象异质性

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Nonlinear time-resolved vibrational spectroscopy is used to compare spectral broadening of the amide I band of the small peptide trialanine with that of N-methylacetamide, a commonly used model system for the peptide bond. In contrast to N-methylacetamide, the amide I band of trialanine is significantly inhomogeneously broadened. Employing classical molecular-dynamics simulations combined with density-functional-theory calculations, the origin of the spectral inhomogeneity is investigated. While both systems exhibit similar hydrogen-bonding dynamics, it is found that the conformational dynamics of trialanine causes a significant additional spectral broadening. In particular, transitions between the poly(Gly)II and the alpha(R) conformations are identified as the main source of the additional spectral inhomogeneity of trialanine. The experimental and computational results suggest that trialanine adopts essentially two conformations: poly(Gly)II (80%) and alpha(R) (20%). The potential of the joint experimental and computational approach to explore conformational dynamics of peptides is discussed. (C) 2002 American Institute of Physics. [References: 49]
机译:非线性时间分辨振动光谱法用于比较小肽三氢嘌呤的酰胺I谱带与N-甲基乙酰胺(一种常用的肽键模型系统)的谱宽。与N-甲基乙酰胺相反,三氢嘌呤的酰胺I条带明显不均匀地加宽。利用经典的分子动力学模拟与密度泛函理论计算相结合,研究了光谱不均匀性的起源。虽然两个系统都表现出相似的氢键动力学,但发现三氢嘌呤的构象动力学会引起明显的附加光谱展宽。特别地,聚(Gly)II和α(R)构象之间的过渡被确定为三氢嘌呤的额外光谱不均匀性的主要来源。实验和计算结果表明,三氢嘌呤基本上具有两个构象:聚(Gly)II(80%)和alpha(R)(20%)。讨论了联合实验和计算方法探索肽构象动力学的潜力。 (C)2002美国物理研究所。 [参考:49]

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